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Solar Trigeneration: a Transitory Simulation of HVAC Systems Using Different Typologies of Hybrid Panels

机译:太阳能三代发电:使用不同类型的混合电池板的HVAC系统的暂态仿真

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摘要

The high energy demand on buildings requires efficient installations and the integration of renewable energy to achieve the goal of reducing energy consumption using traditional energy sources. Usually, solar energy generation and heating loads have different profiles along a day and their maximums take place at different moments. In addition, in months in which solar production is higher, the heating demands are the minimum (hot water is consumed only domestically in summer). Cooling machines (absorption and adsorption) allow using thermal energy to chill a fluid. This heat flow rate could be recovered from solar collectors or any other heat source. The aim of this study is to integrate different typologies of solar hybrid (photovoltaic and thermal) collectors with cooling machines getting solar trigeneration and concluding the optimal combination for building applications. The heat recovered from the photovoltaic module is used to provide energy to these cooling machines getting a double effect: to get a better efficiency on PV modules and to cool the building. In this document the authors analyse these installations, their operating conditions, dimensions and parameters, in order to get the optimal installation in three different European cities. This work suggests that in a family house in Madrid, the optimal combination is to use CPVT with azimuthally tracking and absorption machine. In this case, the solar trigeneration system using 55 m2 of collector area saves the cooling loads and 79% of the heating load in the house round the year.
机译:对建筑物的高能源需求需要高效的安装和可再生能源的集成,以实现使用传统能源减少能耗的目标。通常,太阳能的产生和加热负荷在一天中具有不同的曲线,并且其最大值发生在不同的时刻。此外,在太阳能产量较高的月份中,供暖需求最低(夏季仅在国内使用热水)。冷却机(吸收和吸附)允许使用热能冷却流体。该热流量可以从太阳能收集器或任何其他热源中回收。这项研究的目的是将太阳能混合(光伏和热能)集热器的不同类型与冷却机集成,从而获得太阳能三联产,并得出建筑应用的最佳组合。从光伏模块回收的热量用于为这些冷却机提供能量,从而产生双重效果:提高光伏模块的效率并冷却建筑物。在本文档中,作者分析了这些安装,它们的运行条件,尺寸和参数,以便在三个不同的欧洲城市中获得最佳安装。这项工作表明,在马德里的一所家庭住宅中,最佳组合是将CPVT与方位角跟踪和吸收机一起使用。在这种情况下,集热面积为55平方米的太阳能三热发电系统全年可节省房屋的制冷负荷和79%的热负荷。

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    del Amo Sancho, Alejandro;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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